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Strengthening‐Durable Trade‐Off and Self‐Healing, Recyclable Shape Memory Polyurethanes Enabled by Dynamic Boron–Urethane Bonds

作者:Qingxiang Zhang, Jing Yang, Pengrui Cao, Junhui Gong, Zhangzhang Tang, Kai Zhou, Heming Luo, Xinrui Zhang, Tingmei Wang, Shoubing Chen, Xianqiang Pei, Qihua Wang, Yaoming Zhang · 发表于:Macromolecular Rapid Communications · 年份:2024 · DOI:10.1002/marc.202400277 · 被引用次数:18 · 研究领域:Polymer composites and self-healing、Marine Sponges and Natural Products、Electrospun Nanofibers in Biomedical Applications

Addressing the demand for integrating strength and durability reinforcement in shape memory polyurethane (SMPU) for diverse applications remains a significant challenge. Here a series of SMPUs with ultra-high strength, self-healing and recyclability, and excellent shape memory properties through introducing dynamic boron-urethane bonds are synthesized. The introducing of boric acid (BA) to polyurethane leading to the formation of dynamic covalent bonds (DCB) boron-urethane, that confer a robust cross-linking structure on the SMPUs led to the formation of ordered stable hydrogen-bonding network within the SMPUs. The flexible crosslinking with DCB represents a novel strategy for balancing the trade-off between strength and durability, with their strengths reaching up to 82.2 MPa while also addressing the issue of durability in prolonged usage through the provision of self-healing and recyclability. The self-healing and recyclability of SMPU are demonstrated through rapid dynamic exchange reaction of boron-urethane bonds, systematically investigated by dynamic mechanical analysis (DMA). This study sheds light on the essential role of such PU with self-healing and recyclability, contributing to the extension of the PU's service life. The findings of this work provide a general strategy for overcoming traditional trade-offs in preparing SMPUs with both high strength and good durability.